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Modeling and Analysis of Electrorheological Suspensions in Shear Flow

机译:剪切流动电流悬浮液的建模与分析

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A new rheological model was applied to the analysis of the electrorheological behavior of a fluid containing silica nanoparticle-decorated polyaniline nanofibers. A model's predictions were compared with the experimental data, revealing that the proposed model correctly predicted the shear stress behavior both quantitatively and qualitatively. The shear stress data of the electrorheological fluid showing aligned fibers' structural reformation as a function of the shear rate agreed well with the new model which required fewer parameters than the CCJ (Cho-Choi-Jhon) model. The static yield stress was found to be quadratically dependent on the field strength, in agreement with the predictions of the polarization model. A scaling function was used to model the yield stress behavior of the electrorheological fluid over a range of electric fields, and it correctly predicted the static yield stress behavior both quantitatively and qualitatively.
机译:应用了一种新的流变模型对含有二氧化硅纳米粒子 - 装饰多苯胺纳米纤维的流体的电气学行为的分析。将模型的预测与实验数据进行了比较,揭示了所提出的模型正确地预测定量和定性地的剪切应力行为。作为剪切速率的函数的电流流体的剪切应力数据作为剪切速率的函数同意,这与必要比CCJ(Cho-Choi-Jhon)模型更少的参数。发现静态屈服应力与偏振模型的预测相一致地依赖于场强。缩放功能用于在一系列电场上模拟电流流体的屈服应力行为,并且可以正确地预测定量和定性的静态屈服应力行为。

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